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Biological Psychiatry|March 25, 2004
Neurobiological correlates of high (HAB) versus low anxiety-related behavior (LAB): differential Fos expression in HAB and LAB ratsNicolas Salomé, Peter Salchner, Odile Viltart, et al.Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology|September 19, 2008
Prodynorphin-derived peptides are critical modulators of anxiety and regulate neurochemistry and corticosteroneWalter Wittmann, Eduard Schunk, Iris Rosskothen, et al.International Journal of Molecular Sciences|November 11, 2022
Enriched Environment Attenuates Enhanced Trait Anxiety in Association with Normalization of Aberrant Neuro-Inflammatory EventsAnupam Sah, Sinead Rooney, Maria Kharitonova, et al.Neuropharmacology|April 20, 2006
Airjet and FG-7142-induced Fos expression differs in rats selectively bred for high and low anxiety-related behaviorPeter Salchner, Simone B Sartori, Catrin Sinner, et al.Annals of Medicine|January 11, 2014
Circadian abnormalities in a mouse model of high trait anxiety and depressionIrene Griesauer, Weifei Diao, Marianne Ronovsky, et al.Journal of Chemical Information and Modeling|May 23, 2014
Pharmacophore modeling, virtual screening, and in vitro testing reveal haloperidol, eprazinone, and fenbutrazate as neurokinin receptors ligandsYvonne Krautscheid, Carl Johann Åke Senning, Simone B Sartori, et al.Neuropharmacology|July 18, 2009
Serotonin(1A)-receptor-dependent signaling proteins in mouse hippocampusLin Li, Nigel Whittle, Stefanie Klug, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|November 17, 2020
Microglial ablation in rats disrupts the circadian systemLuba Sominsky, Tamara Dangel, Sajida Malik, et al.Behavioral Neuroscience|February 24, 2006
Genetic predisposition to anxiety-related behavior determines coping style, neuroendocrine responses, and neuronal activation during social defeatElisabeth Frank, Peter Salchner, J Matthew Aldag, et al.Frontiers in Behavioral Neuroscience|May 27, 2014
Loss of Nogo receptor homolog NgR2 alters spine morphology of CA1 neurons and emotionality in adult miceSarah C Borrie, Simone B Sartori, Julian Lehmann, et al.Pageof 13